Establishment and characterization of two new human embryonic stem cell lines, SYSU-1 and SYSU-2 |
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Authors: | Huang Guo Li Wei-qiang Chen Rui Chen Zhen-guang Zhang Xiu-ming Mao Fu-xiang Huang Shao-liang Li Shu-nong Lahn Bruce T Xiang Andy Peng |
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Affiliation: | 1. Centre for Stem Cell Biology and Tissue Engineering, Sun Yat-sen University, Guangzhou 510080, China;Fourth People's Hospital of Shenzhen, Shenzhen 518033, China 2. Centre for Stem Cell Biology and Tissue Engineering, Sun Yat-sen University, Guangzhou 510080, China 3. Department of Thoracic Surgery, First Affiliated Hospital, Sun Yat-sen University, Guangzhou 510080, China |
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Abstract: | Background Human embryonic stem cells can propagate indefinitely in vitro and are able to differentiate into derivatives of all three embryonic germ layers. The excitement surrounding human embryonic stem cells lies largely in their potential to produce specialized cells that can be used for transplant therapies. However, further investigation requires additional cell lines with varying genetic background. Therefore, efforts to derive and establish more human embryonic stem cell lines are highly warranted.Methods Surplus embryos (blastocysts) from donors were used to isolate the inner cell mass by immunosurgery. All cells were cultured continuously on irradiated murine embryonic fibroblasts feed layer and likely human embryonic stem cell colonies were subsequently characterized by cell surface marker staining, karyotyping and teratoma formation.Results Two human embryonic stem cell lines (SYSU-1 and SYSU-2) were established from surplus embryos. The two lines express several pluripotency markers including alkaline phosphatase, SSEA- 4, Tra-1-60, Oct-4, Nanog and Rex-1. They remain in undifferentiated state with normal karyotype after prolonged passages and can form embryoid bodies in vitro and teratoma in vivo. Conclusion Two new human embryonic stem cell lines have been established from surplus embryos. They can be used to understand selfrenewal and differentiating mechanisms and provide more choices for regenerative medicine. |
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Keywords: | embryonic stem cells blastocysts inner cell mass cell differentiation |
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